Literature DB >> 21968840

A high-throughput automated platform for the development of manufacturing cell lines for protein therapeutics.

Shuangping Shi1, Russ G G Condon, Liang Deng, Jason Saunders, Finn Hung, Yung-Shyeng Tsao, Zhong Liu.   

Abstract

The fast-growing biopharmaceutical industry demands speedy development of highly efficient and reliable production systems to meet the increasing requirement for drug supplies. The generation of production cell lines has traditionally involved manual operations that are labor-intensive, low-throughput and vulnerable to human errors. We report here an integrated high-throughput and automated platform for development of manufacturing cell lines for the production of protein therapeutics. The combination of BD FACS Aria Cell Sorter, CloneSelect Imager and TECAN Freedom EVO liquid handling system has enabled a high-throughput and more efficient cell line development process. In this operation, production host cells are first transfected with an expression vector carrying the gene of interest (1), followed by the treatment with a selection agent. The stably-transfected cells are then stained with fluorescence-labeled anti-human IgG antibody, and are subsequently subject to flow cytometry analysis (2-4). Highly productive cells are selected based on fluorescence intensity and are isolated by single-cell sorting on a BD FACSAria. Colony formation from single-cell stage was detected microscopically and a series of time-laps digital images are taken by CloneSelect Imager for the documentation of cell line history. After single clones have formed, these clones were screened for productivity by ELISA performed on a TECAN Freedom EVO liquid handling system. Approximately 2,000 - 10,000 clones can be screened per operation cycle with the current system setup. This integrated approach has been used to generate high producing Chinese hamster ovary (CHO) cell lines for the production of therapeutic monoclonal antibody (mAb) as well as their fusion proteins. With the aid of different types of detecting probes, the method can be used for developing other protein therapeutics or be applied to other production host systems. Comparing to the traditional manual procedure, this automated platform demonstrated advantages of significantly increased capacity, ensured clonality, traceability in cell line history with electronic documentation and much reduced opportunity in operator error.

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Year:  2011        PMID: 21968840      PMCID: PMC3230188          DOI: 10.3791/3010

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.355


  8 in total

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Journal:  Biotechnol Prog       Date:  2007-01-30

3.  mRNA stability and antibody production in CHO cells: improvement through gene optimization.

Authors:  Finn Hung; Liang Deng; Paula Ravnikar; Russ Condon; Benson Li; Lien Do; Deba Saha; Yung-Shyeng Tsao; Ankit Merchant; Zhong Liu; Shuangping Shi
Journal:  Biotechnol J       Date:  2010-04       Impact factor: 4.677

4.  Gel microdrop technology for rapid isolation of rare and high producer cells.

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Journal:  Nat Med       Date:  1997-05       Impact factor: 53.440

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6.  Green fluorescent protein as a second selectable marker for selection of high producing clones from transfected CHO cells.

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Journal:  Gene       Date:  2000-01-25       Impact factor: 3.688

7.  A simple method for enriching populations of transfected CHO cells for cells of higher specific productivity.

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Journal:  J Immunol Methods       Date:  2003-06-01       Impact factor: 2.303

8.  Selective cloning of hybridoma cells for enhanced immunoglobulin production using flow cytometric cell sorting and automated laser nephelometry.

Authors:  P Marder; R S Maciak; R L Fouts; R S Baker; J J Starling
Journal:  Cytometry       Date:  1990
  8 in total
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Journal:  MAbs       Date:  2017-06-14       Impact factor: 5.857

2.  Development of a High-Throughput and Miniaturized Cytokinesis-Block Micronucleus Assay for Use as a Biological Dosimetry Population Triage Tool.

Authors:  Stanley W Lue; Mikhail Repin; Ryan Mahnke; David J Brenner
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3.  An automated HIV-1 Env-pseudotyped virus production for global HIV vaccine trials.

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Journal:  PLoS One       Date:  2012-12-27       Impact factor: 3.240

Review 4.  Automation in cell and gene therapy manufacturing: from past to future.

Authors:  P Moutsatsou; J Ochs; R H Schmitt; C J Hewitt; M P Hanga
Journal:  Biotechnol Lett       Date:  2019-09-20       Impact factor: 2.461

Review 5.  White paper on high-throughput process development for integrated continuous biomanufacturing.

Authors:  Mariana N São Pedro; Tiago C Silva; Rohan Patil; Marcel Ottens
Journal:  Biotechnol Bioeng       Date:  2021-04-02       Impact factor: 4.530

  5 in total

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